动力素
卫星
再生(生物学)
肌病
计算机科学
细胞生物学
生物
医学
内科学
遗传学
工程类
细胞
航空航天工程
内吞作用
作者
Camila de Almeida,Marc Bitoun,Mariz Vainzof
标识
DOI:10.1096/fj.202001313rrr
摘要
Dynamin 2 (DNM2) is a ubiquitously expressed protein involved in many functions related to trafficking and remodeling of membranes and cytoskeleton dynamics.Mutations in the DNM2 gene cause the autosomal dominant centronuclear myopathy (AD-CNM), characterized mainly by muscle weakness and central nuclei.Several defects have been identified in the KI-Dnm2 R465W/+ mouse model of the disease to explain the muscle phenotype, including reduction of satellite cells pool in muscle, but the functional consequences of this depletion have not been characterized until now.Satellite cells (SC) are the main source for muscle growth and regeneration of mature tissue.Here, we investigated muscle regeneration in the KI-Dnm2 R465W/+ mouse model for AD-CNM.We found a reduced number of Pax7positive SCs, which were also less activated after induced muscle injury.The muscles of the KI-Dnm2 R465W/+ mouse regenerated more slowly and less efficiently than wild-type ones, formed fewer new myofibers, and did not recover its normal mass 15 days after injury.Altogether, our data provide evidence that the muscle regeneration is impaired in the KI-Dnm2 R465W/+ mouse and contribute with one more layer to the comprehension of the disease, by identifying a new pathomechanism linked to DNM2 mutations which may be involved in the muscle-specific impact occurring in AD-CNM.
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